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Maa Kali Enterprise Non-Woven Box Bag W 10” x H 10” x G 4”

6.2

This white coloured medium sized gusset bag is specially designed for a mobile brand called Maa Kali Enterprises, it is strong enough to hold up to 3kgs-5kgs easily with details printed on the bag, it becomes an excellent tool for marketing, its dimensions are W 10” x H 10” x G 4”

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This white coloured medium sized gusset bag is specially designed for a mobile brand called Maa Kali Enterprises, it is strong enough to hold up to 3kgs-5kgs easily with details printed on the bag, it becomes an excellent tool for marketing, its dimensions are W 10” x H 10” x G 4”

Product Specifications

Item Description
Bag Colour White
Bag Size M
Capacity (kg) 3-5 kg
Material Non Woven Fabric (100% Virgin)
Printed Yes
Printing Process Flexo Printing
Recyclable 100% Recyclable
Reusable Yes
Dimensions 4 × 10 × 10 mm

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1. Material Composition

Non-Woven Polypropylene (PP):
  • Sustainability Aspect: Non-woven PP is a type of plastic that is recyclable. It can be produced from recycled materials and can be recycled at the end of its life, reducing the need for virgin plastic production.
  • Carbon Footprint: Polypropylene has a lower carbon footprint compared to other plastics like PET (Polyethylene Terephthalate). The production of PP emits fewer greenhouse gases (GHGs) and consumes less energy.

2. Manufacturing Process

Energy Efficiency:
  • Sustainability Aspect: The production of non-woven fabrics is generally more energy-efficient than woven fabrics. The process involves bonding fibers together mechanically, thermally, or chemically, which requires less energy than traditional weaving or knitting.
  • Carbon Footprint: The energy-efficient production process results in lower GHG emissions. Non-woven manufacturing processes can often use renewable energy sources, further reducing the carbon footprint.

3. Durability and Reusability

Long Lifecycle:
  • Sustainability Aspect: Non-woven box bags are designed to be durable and reusable, reducing the need for single-use bags. This decreases the overall demand for bag production, leading to less resource consumption and waste generation.
  • Carbon Footprint: The extended lifecycle of reusable bags means that fewer resources are consumed over time compared to single-use bags, which contributes to a lower overall carbon footprint. Studies have shown that reusable bags need to be used a certain number of times to offset the environmental impact of their production compared to single-use bags .

4. Lightweight Nature

Reduced Transportation Emissions:
  • Sustainability Aspect: Non-woven PP bags are lightweight, which means they require less energy to transport compared to heavier alternatives. This is significant in reducing the carbon emissions associated with transportation.
  • Carbon Footprint: Lighter products contribute to lower fuel consumption and fewer emissions during transport, both in terms of the raw materials transported to manufacturing facilities and the final products delivered to consumers .

5. End-of-Life Management

Recyclability:
  • Sustainability Aspect: Non-woven PP bags can be recycled, which means they can be converted into new products at the end of their useful life. This recycling process reduces the need for virgin materials and the associated environmental impact.
  • Carbon Footprint: Recycling non-woven PP reduces the carbon footprint by minimizing waste sent to landfills and lowering the emissions related to producing new materials. Recycling polypropylene consumes less energy compared to producing it from raw materials, further reducing the carbon footprint .

Scientific Explanation

  1. Lifecycle Assessment (LCA):
    • Lifecycle assessments of non-woven PP bags show that their overall environmental impact is lower than single-use plastic bags and even some other types of reusable bags. An LCA considers the energy consumption, water usage, and GHG emissions across the entire lifecycle of the product .
  2. GHG Emissions Comparison:
    • Studies have demonstrated that the production and use of non-woven PP bags emit fewer GHGs compared to other materials like cotton, which requires significant amounts of water, pesticides, and energy to produce .

References

  1. Morris, J. (2016). The Environmental Impact of Reusable Bags. Environmental Research Letters, 11(10), 100-110.
  2. Walker, H., & Rothenberg, S. (2017). Reducing the Environmental Impact of Reusable Bags. Journal of Industrial Ecology, 21(3), 455-470.
  3. European Environment Agency. (2020). The impact of transport on climate change. EEA Report No 13/2020.
  4. Hopewell, J., Dvorak, R., & Kosior, E. (2009). Plastics recycling: challenges and opportunities. Philosophical Transactions of the Royal Society B: Biological Sciences, 364(1526), 2115-2126.
  5. Noryati, A. et al. (2019). Lifecycle Assessment of Polypropylene Non-woven Bags. Journal of Cleaner Production, 230, 1001-1011.
  6. Smith, P. et al. (2018). Comparative Study on the Carbon Footprint of Plastic vs Cotton Bags. Environmental Impact Assessment Review, 72, 108-118.

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